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    • 4. 发明授权
    • Container with multiple chambers and multiple openings
    • 具有多个腔室和多个开口的容器
    • US08651271B1
    • 2014-02-18
    • US13776966
    • 2013-02-26
    • Tzu-Yuan Shen
    • Tzu-Yuan Shen
    • B65D6/28
    • B65D21/0204
    • A container with multiple chambers and multiple openings consists of two bottles not in fluid communications. Each of the two bottles has an upper opening facing upward and a lower opening facing downward, both sealed by an upper cover and a lower cover, respectively. The surrounding surface of each of the two bottles is divided into a junction surface and an outer side surface. Each of the junction surfaces has a connecting part. The two bottles are connected/separated by the connecting parts on the junction surfaces horizontally. The outer side surface of each of the two bottles has the shape of an arc, so that the connected bottles form a complete single cylindrical container.
    • 具有多个室和多个开口的容器由两个未流体通信的瓶组成。 两个瓶子中的每一个分别具有面向上的上开口和面向下的下开口,两者分别由上盖和下盖密封。 两个瓶子中的每一个的周围表面被分成接合面和外侧表面。 每个接合面具有连接部分。 两个瓶子由接合面上的连接部分水平地连接/分开。 两个瓶子的每个的外侧表面具有弧形,使得连接的瓶子形成完整的单个圆柱形容器。
    • 5. 发明申请
    • CONTAINER WITH MULTIPLE CHAMBERS AND MULTIPLE OPENINGS
    • 容器与多个开关和多个开口
    • US20140042116A1
    • 2014-02-13
    • US13776966
    • 2013-02-26
    • Tzu-Yuan Shen
    • Tzu-Yuan Shen
    • B65D21/02
    • B65D21/0204
    • A container with multiple chambers and multiple openings consists of two bottles not in fluid communications. Each of the two bottles has an upper opening facing upward and a lower opening facing downward, both sealed by an upper cover and a lower cover, respectively. The surrounding surface of each of the two bottles is divided into a junction surface and an outer side surface. Each of the junction surfaces has a connecting part. The two bottles are connected/separated by the connecting parts on the junction surfaces horizontally. The outer side surface of each of the two bottles has the shape of an arc, so that the connected bottles form a complete single cylindrical container.
    • 具有多个室和多个开口的容器由两个未流体通信的瓶组成。 两个瓶子中的每一个分别具有面向上的上开口和面向下的下开口,两者分别由上盖和下盖密封。 两个瓶子中的每一个的周围表面被分成接合面和外侧表面。 每个接合面具有连接部分。 两个瓶子由接合面上的连接部分水平地连接/分开。 两个瓶子的每个的外侧表面具有弧形,使得连接的瓶子形成完整的单个圆柱形容器。
    • 6. 发明申请
    • ELECTRONIC SPEED CONTROLLER APPARATUS WITH SIGNAL DIVIDING PORT DEVICE AND CONTROL METHOD THEREOF
    • 具有信号分流端口装置的电子速度控制器装置及其控制方法
    • US20120091926A1
    • 2012-04-19
    • US13220036
    • 2011-08-29
    • Chih-Yuan SHEN
    • Chih-Yuan SHEN
    • G05D13/02
    • H02P7/00
    • The present invention discloses an electronic speed controller apparatus with a signal dividing port device and a control method thereof. An electronic speed controller apparatus comprises an electronic speed controller, a radio receiver, and a signal dividing port device. The radio receiver is electronically connected with the electronic speed controller. The signal dividing port device is electronically connected with the electronic speed controller. The signal dividing port device has at least one port. In the present invention, the radio receiver receives signals from a signal emitting station and transmits the signals to the electronic speed controller, the signal dividing port device integrates power button, light emitting module and at least one port to further electrically connection with a programming adapter or a terminal.
    • 本发明公开了一种具有信号分配端口装置及其控制方法的电子速度控制装置。 电子速度控制器装置包括电子速度控制器,无线电接收器和信号分配端口装置。 无线电接收机与电子速度控制器电子连接。 信号分配端口装置与电子速度控制器电连接。 信号分配端口装置具有至少一个端口。 在本发明中,无线电接收机从信号发射站接收信号并将信号发送到电子速度控制器,信号分配端口装置将电源按钮,发光模块和至少一个端口集成,以进一步与编程适配器 或终端。
    • 7. 发明授权
    • Spacer structure
    • 间隔结构
    • US07952681B2
    • 2011-05-31
    • US12327819
    • 2008-12-04
    • Po-Yuan Shen
    • Po-Yuan Shen
    • G02F1/1333
    • G02F1/13394G02F2001/13396G02F2001/13398
    • A spacer structure includes a first substrate, an overcoat layer, first spacers, second spacers, and a second substrate. The first spacers are disposed in a first region, and the overcoat layer has a first thickness in the first region. The second spacers are disposed in a second region, and the overcoat layer has a second thickness in the second region. The first spacers and the second spacers have the same height, and the first thickness is greater than the second thickness. Accordingly, no gap exists between each of the first spacers and the second substrate; however, a gap exists between each or the second spacers and the second substrate.
    • 间隔结构包括第一基底,外涂层,第一间隔物,第二间隔物和第二基底。 第一间隔件设置在第一区域中,并且外涂层在第一区域具有第一厚度。 第二间隔件设置在第二区域中,并且外涂层在第二区域具有第二厚度。 第一间隔件和第二间隔件具有相同的高度,第一厚度大于第二厚度。 因此,在每个第一间隔件和第二基板之间不存在间隙; 然而,在每个或第二间隔件和第二衬底之间存在间隙。
    • 9. 发明授权
    • Method for making thin film transistor
    • 制造薄膜晶体管的方法
    • US07829398B2
    • 2010-11-09
    • US11871155
    • 2007-10-11
    • Yi-Kai WangLiang-Ying HuangTarng-Shiang HuYu-Yuan Shen
    • Yi-Kai WangLiang-Ying HuangTarng-Shiang HuYu-Yuan Shen
    • H01L21/00
    • H01L51/102H01L27/283H01L51/0023H01L51/0545
    • A method for making a thin film transistor (TFT) is provided. A mask is first formed on the backside of a substrate, and is used to fabricate a gate, source, and drain of the transistor by backside exposure, such that the source and drain can be self-aligned with the gate pattern. In this way, an alignment shift due to expansion or contraction after performing a high temperature process on an insulating layer can be avoided. Further, since the backside mask previously formed on the substrate can be shifted with the expansion or contraction of the substrate, the process is simplified. Moreover, the source/drain can be accurately aligned with the gate, so that parasitic capacitance can be reduced and flickering of the panel can be avoided.
    • 提供了制造薄膜晶体管(TFT)的方法。 首先在衬底的背面形成掩模,并且用于通过背面曝光来制造晶体管的栅极,源极和漏极,使得源极和漏极可以与栅极图案自对准。 以这种方式,可以避免在对绝缘层进行高温处理之后由于膨胀或收缩引起的对准移位。 此外,由于预先形成在基板上的背面掩模可以随着基板的膨胀或收缩而偏移,因此简化了处理。 此外,源极/漏极可以精确地与栅极对准,使得可以减小寄生电容并且可以避免面板的闪烁。